Kasid U N, Weichselbaum R R, Brennan T, Mark G E, Dritschilo A
Department of Radiation Medicine, Georgetown University School of Medicine, Vincent T. Lombardi Comprehensive Cancer Research Center, Washington, DC 20007.
Cancer Res. 1989 Jun 15;49(12):3396-400.
Rodent cells are frequently used as recipients in experiments involving gene transfer, isolation, and characterization. The present studies were designed to investigate the clonal responses to ionizing radiation of NIH/3T3 cells subjected to DNA-mediated gene transfer. Radiation sensitivity (D0) values were determined for the parental NIH/3T3 cell strain, six clonal cell lines transfected with DNA from radiation-resistant human tumor cells, and six nontransfected clonal cell lines. The radiation sensitivities of four transfected and two nontransfected clonal cell lines differed significantly from parental NIH/3T3 cells (P less than 0.05). Detailed karyotype analysis of two nontransfected clonal cell lines with differing radiation sensitivities showed variation in chromosomal composition. Specifically, a minute chromosome was observed to segregate consistently (in 49 of 50 metaphases) with the genome of one NIH/3T3 clone (D0 2.07 Gy) and was completely absent (from 50 metaphases) in another NIH/3T3 clone (D0 1.06 Gy). In the parental NIH/3T3 strain (D0 2.02 Gy) 10% of cells (3 of 30 metaphases) had such minute chromosomes. These findings demonstrate that the clonal cellular heterogeneity of NIH/3T3 cells is characterized by genotypic and phenotypic variations which must be considered in the experimental design involving gene transfer and expression.
在涉及基因转移、分离和表征的实验中,啮齿动物细胞经常被用作受体。本研究旨在调查经DNA介导的基因转移的NIH/3T3细胞对电离辐射的克隆反应。测定了亲本NIH/3T3细胞系、六个用来自抗辐射人类肿瘤细胞的DNA转染的克隆细胞系以及六个未转染的克隆细胞系的辐射敏感性(D0)值。四个转染的和两个未转染的克隆细胞系的辐射敏感性与亲本NIH/3T3细胞有显著差异(P小于0.05)。对两个辐射敏感性不同的未转染克隆细胞系进行详细的核型分析,结果显示染色体组成存在差异。具体而言,观察到一条微小染色体在一个NIH/3T3克隆(D0为2.07 Gy)的基因组中始终(在50个中期中的49个)分离,而在另一个NIH/3T3克隆(D0为1.06 Gy)中则完全不存在(在50个中期中)。在亲本NIH/3T3细胞系(D0为2.02 Gy)中,10%的细胞(30个中期中的3个)有这种微小染色体。这些发现表明,NIH/3T3细胞的克隆细胞异质性具有基因型和表型变异的特征,在涉及基因转移和表达的实验设计中必须予以考虑。